Part I:Studies on the Constituents of Prunus phaeosticta (HANCE) MAXIM. Part II:Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benthiazinone Analogues.
碩士 === 台北醫學院 === 藥學研究所 === 85 === Part I. The Constituents of Prunus phaeosticta (HANCE) MAXIM. Prunus phaeosticta (HANCE) MAXIM. is a novel Prunus plant of Rosaceae in Taiwan. Prunus plants have been used as nourish the lung, resalve sputum, for treatmen...
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ndltd-TW-085TMC005510032016-07-01T04:15:58Z http://ndltd.ncl.edu.tw/handle/33986915272503308403 Part I:Studies on the Constituents of Prunus phaeosticta (HANCE) MAXIM. Part II:Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benthiazinone Analogues. 第一部份:黑星櫻成份之研究第二部份:黑星櫻成份,苯駢塞井酮類及類似物對黃嘌呤氧化脢之抑制作用 Lin, Chun-Yu 林君郁 碩士 台北醫學院 藥學研究所 85 Part I. The Constituents of Prunus phaeosticta (HANCE) MAXIM. Prunus phaeosticta (HANCE) MAXIM. is a novel Prunus plant of Rosaceae in Taiwan. Prunus plants have been used as nourish the lung, resalve sputum, for treatment of dryness-syndrome, also as diuretic, tonic, astringent and for treatment of benign prostate hyperplasia. In this study, the constituents of the plant were isolated, and compared with the constituents of other Prunus spp. By variaus column chromatography, seven compounds were isolated from the chloroform soluble fraction. Three compounds, beta-amyrin(1), taraxerol(2) and beta-sitosterol-3-O-beta-D- glucoside(3) were characterized by spectroscopic data and chemicalmethods, and four constituents remain to be analyzed. Part II. Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benzothiazinone Analogues. According to the literature, xanthine oxidaseis related to several diseases such as gout, tissue reperusion iniuries, brain tumors, acute pancreatitis and hepatitis. In this study, the constituents of Prunus phaeosticta (HANCE) MAXIM., thiazoles and benzothiazinones have been tested for their inhibitory, effects on xanthine oxidase:determination of percent inhibition, IC50, mode of inhibition and the apparent inhibition constant (Ki). It is expected that xanthine oxidase inhibitors are useful for the treatment or prevention of these diseases mentioned as above. The enzyme, xanthine oxidase catalyses the oxidation of hypoxanthine to xanthine and of xanthine to uric acid which has wavelength of 295 nm. Uric acid was thus forming basis for a spectrophotometric assay of the activity of xanthineoxidase. According to the Lineweaver-Burk plot equation, mode of inhibition andthe apparent inhibition constants (Ki) were estimated. The results showed that the constituents of Prunus phaeosticta (HANCE) MAXIM. showed very weak inhibitory effect on xanthine oxidase. On the other hand, benzothiazinone analogues, 2-amino-4H-1,3-benzothiazin-4-one (IC50-5.54uM, Ki=5.12uM) and 2-guanidino-4H-1,3-benzothiazin-4-one (IC50=5.60uM, Ki=19.47uM) displayed potent activities on xanthine oxidase inhibition. They induced noncompetitive and mixed (non-competi tive-uncompective) type inhibitions respectively, with respect to the substrate xanthine. Rhodanine (IC50=121.40uM, Ki=206.23uM) also showed moderate effects on xanthine oxidase inhibition, and induced mixed (non-compective-uncompetitive) type inhibition of the enzyme with respect to the substrate xanthine. Sheu Shiow-Yunn 許秀蘊 1997 學位論文 ; thesis 106 zh-TW |
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碩士 === 台北醫學院 === 藥學研究所 === 85 === Part I. The Constituents of Prunus phaeosticta (HANCE) MAXIM.
Prunus phaeosticta (HANCE) MAXIM. is a novel Prunus plant of
Rosaceae in Taiwan. Prunus plants have been used as nourish the
lung, resalve sputum, for treatment of dryness-syndrome, also as
diuretic, tonic, astringent and for treatment of benign prostate
hyperplasia. In this study, the constituents of the plant were
isolated, and compared with the constituents of other Prunus
spp. By variaus column chromatography, seven compounds were
isolated from the chloroform soluble fraction. Three compounds,
beta-amyrin(1), taraxerol(2) and beta-sitosterol-3-O-beta-D-
glucoside(3) were characterized by spectroscopic data and
chemicalmethods, and four constituents remain to be analyzed.
Part II. Inhibition of Xanthine Oxidase by the Constituents of
Prunus phaeosticta (HANCE) MAXIM. and Benzothiazinone Analogues.
According to the literature, xanthine oxidaseis related to
several diseases such as gout, tissue reperusion iniuries, brain
tumors, acute pancreatitis and hepatitis. In this study, the
constituents of Prunus phaeosticta (HANCE) MAXIM., thiazoles and
benzothiazinones have been tested for their inhibitory, effects
on xanthine oxidase:determination of percent inhibition, IC50,
mode of inhibition and the apparent inhibition constant (Ki). It
is expected that xanthine oxidase inhibitors are useful for the
treatment or prevention of these diseases mentioned as above.
The enzyme, xanthine oxidase catalyses the oxidation of
hypoxanthine to xanthine and of xanthine to uric acid which has
wavelength of 295 nm. Uric acid was thus forming basis for a
spectrophotometric assay of the activity of xanthineoxidase.
According to the Lineweaver-Burk plot equation, mode of
inhibition andthe apparent inhibition constants (Ki) were
estimated. The results showed that the constituents of Prunus
phaeosticta (HANCE) MAXIM. showed very weak inhibitory effect on
xanthine oxidase. On the other hand, benzothiazinone analogues,
2-amino-4H-1,3-benzothiazin-4-one (IC50-5.54uM, Ki=5.12uM) and
2-guanidino-4H-1,3-benzothiazin-4-one (IC50=5.60uM, Ki=19.47uM)
displayed potent activities on xanthine oxidase inhibition. They
induced noncompetitive and mixed (non-competi tive-uncompective)
type inhibitions respectively, with respect to the substrate
xanthine. Rhodanine (IC50=121.40uM, Ki=206.23uM) also showed
moderate effects on xanthine oxidase inhibition, and induced
mixed (non-compective-uncompetitive) type inhibition of the
enzyme with respect to the substrate xanthine.
|
author2 |
Sheu Shiow-Yunn |
author_facet |
Sheu Shiow-Yunn Lin, Chun-Yu 林君郁 |
author |
Lin, Chun-Yu 林君郁 |
spellingShingle |
Lin, Chun-Yu 林君郁 Part I:Studies on the Constituents of Prunus phaeosticta (HANCE) MAXIM. Part II:Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benthiazinone Analogues. |
author_sort |
Lin, Chun-Yu |
title |
Part I:Studies on the Constituents of Prunus phaeosticta (HANCE) MAXIM. Part II:Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benthiazinone Analogues. |
title_short |
Part I:Studies on the Constituents of Prunus phaeosticta (HANCE) MAXIM. Part II:Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benthiazinone Analogues. |
title_full |
Part I:Studies on the Constituents of Prunus phaeosticta (HANCE) MAXIM. Part II:Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benthiazinone Analogues. |
title_fullStr |
Part I:Studies on the Constituents of Prunus phaeosticta (HANCE) MAXIM. Part II:Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benthiazinone Analogues. |
title_full_unstemmed |
Part I:Studies on the Constituents of Prunus phaeosticta (HANCE) MAXIM. Part II:Inhibition of Xanthine Oxidase by the Constituents of Prunus phaeosticta (HANCE) MAXIM. and Benthiazinone Analogues. |
title_sort |
part i:studies on the constituents of prunus phaeosticta (hance) maxim. part ii:inhibition of xanthine oxidase by the constituents of prunus phaeosticta (hance) maxim. and benthiazinone analogues. |
publishDate |
1997 |
url |
http://ndltd.ncl.edu.tw/handle/33986915272503308403 |
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